Monday, April 30, 2012

Moth program results

Our moth program with field guide author Seabrooke Leckie was a great success! We were a bit worried about the cool weather, but Seabrooke explained that many moth species overwinter as adults (rather than eggs, caterpillars, or pupae/cocoons). These cold-hardy species will fly in temperatures cooler than we were experiencing (in the mid-50s).

Seabrooke arrived in late afternoon, and we set up several sheets with different types of light (black light, mercury vapor). Moths are attracted to the lights and land on the sheets.

One of the sheet/light set ups.

We also soaked some rope in a mixture of red wine and brown sugar, and hung them out to attract species that feed on nectar and sap (many adult moths, however, do not eat at all). This mix should really be allowed to ferment, so we didn't have luck with that.

Stinky, sticky wine rope hanging from wood shed.
Seabrooke started out with a short presentation focusing on moths in the environment.



Then our group of about 30 people made the rounds of the sheets and collected moths in clear pill bottles. These were brought back into the building where Seabrooke identified them.



Seabrooke also helped my husband Darrin identify some photographs he had taken the last few years.

 
Our friend Don Sherwood has been raising silkworm moths. He brought along this Luna Moth to show everybody. I think this is probably one of the most beautiful moths in the world!


Here is our list of moths that came to the lights, with links to the species or genus at BugGuide, a great online resource for insect identification. Some very tiny moths ("micromoths") were only identified to genus.
The Curve-toothed Geometer. We released
all the moths at the end of the night.
  1. Unicorn Prominent (Schizura unicornus)
  2. The Gem (Orthonama obstiptata)
  3. Celery Leaftier (Udea rubigalis)
  4. Palmerworm Moth (Dichomeris ligulella)
  5. Featherduster Agonopterix (Agonopterix pulvipennella)
  6. Confused Woodgrain (Morrisonia confusa)
  7. Acleris sp.
  8. Common Acleris (Acleris subnivana)
  9. The White-Speck/Armyworm (Mythimna unipuncta)
  10. Dusky Groundling (Condica vecors)
  11. Olive-and-black Carpet (Acasis viridata)
  12. Epinotia sp.
  13. Eupithica sp.
  14. Bent-line Carpet (Costaconvexa centrostrigaria)
  15. Curve-toothed Geometer (Eutrapela clemataria)
  16. Red-banded Leafroller (Argyrotaenia velutinana)
  17. Gray-banded Leafroller (Argyrotaenia mariana)
There were also a couple of "get-aways" and some that flew near the sheets that we didn't catch.

Thank you Seabrooke for an excellent evening!

Julie Craves and Seabrooke Leckie.

Thursday, April 26, 2012

Update on European Goldfinches

Update: This paper has been published! It's open access so you can read online or download the PDF; click on title below -

Craves, J.A., and N.M. Anich. 2023. ­­­Status and distribution of an introduced population of European Goldfinches (Carduelis carduelis) in the western Great Lakes region of North America. Neobiota 81:129-155. doi: 10.3897/neobiota.81.97736

--

People continue to leave me comments on my previous posts about European Goldfinches in the U.S. (see list of posts below). I am still keeping track, especially of breeding records. In addition to accumulating reports from proactive observers, I also periodically look through birding listservs and eBird records. Unfortunately, any Illinois records put in eBird are filtered out of public view, but the state reviewer is working on changing this. Even so, I still have over 50 records of well over 100 birds from the past few years just in southern Wisconsin and northern Illinois alone.

Here's a map from a previous post, showing the Wisconsin and Illinois counties highlighted in red where the bulk of reports of European Goldfinch come from.


In a previous post, I documented nesting in Waukegan, Illinois, which is in Lake County. Later, I found a report online of a family of European Goldfinches at Waukegan Beach on 13 August 2009, consisting of five birds: two adults, and two juveniles, with the fifth bird likely also a juvenile. The observer posted this photo on Flickr. The day before the photo was taken, another observer saw a minimum of 13 European Goldfinches foraging in a weedy area in what appeared to be two to four family groups in an area just adjacent to Waukegan Beach.

In 2011, European Goldfinches were reported nest-building at Waukegan Beach. A report in April 2012, just a couple weeks ago, also mentioned them gathering nest material. So it seems a breeding population is well-established in the Waukegan area.

These may not be the first European Goldfinches to have nested in Illinois, as there was also a report of birds nest building at Montrose Point in Chicago, Cook County as early as 2003.

In Wisconsin, the breeding population seems centered in the Racine area of Racine County. That is around 25 miles north of Waukegan. My previous post documented a juvenile in 2009 in the Racine suburb of Mt. Pleasant. Subsequently, I received a report in late July 2009: the Scheefs in suburban Racine reported on a juvenile showing up at their feeders shown in this post.

I also heard from Sarah Anspaugh of Racine, who took the photo below of a European Goldfinch family. A pair showed up at her feeder on 13 May 2009, appeared periodically through June, and on 8 July 8 there were 2 juveniles with them.


Jane Scheef of Racine contacted me again in 2010. The pair in her neighborhood arrived at her feeder on 29 June with 5 young in tow, shown in the photo below.



I think that an eBird report of six to eight coming to a feeder in Racine in late winter 2011 may be the same residence. The largest flock I have heard about was that of 30 on 4 December 2011, also in Racine (I think this checklist is the exact location).

Finally, in between Waukegan, IL and Racine, WI is Kenosha, WI, where a correspondent named Donna has had at least one pair of European Goldfinches at her feeders. In June 2011, she photographed them with three young. She recently wrote me that a pair is currently coming to her feeders.

Unlike American Goldfinches, European Goldfinches typically nest in May and June, so be on the lookout and keep sending those reports.

Here are my other posts:

Monday, April 2, 2012

Moth program with field guide author Seabrooke Leckie


It's with great anticipation that I announce an upcoming program, a joint effort between RRBO and the University of Michigan-Dearborn Environmental Interpretive Center. Seabrooke Leckie, co-author of the new Peterson Field Guide to Moths of Northeastern North America will be visiting on Sunday, April 29, 2012. She will be giving an informal program on moths, and will be setting up her nocturnal moth-attracting gear in the campus natural area to see what is around. Late April can be fairly early for a wide variety of moths at this latitude, but with the exceptionally warm spring, it's hard to know what to expect! Let's hope the weather doesn't turn too fickle.

I can't wait to see the new field guide. It will be released shortly before the program, and Seabrooke will be happy to sign your copy (she will have some available for purchase, or you can pre-order at Amazon). This book is sorely needed, and you can read more about the story behind it, what it will include, and see some sample plates at Seabrooke's web site.

Plus, I'm really looking forward to finally meeting Seabrooke in person. I first became aware of her through her former work as a bird bander at Tommy Thompson Park Bird Research Station in Toronto. They banded a Ruby-crowned Kinglet in 2003 that I recaptured here on campus in 2005. Since then, she and I have kept in touch through our blogs and social networking. Seven years is like forever in the ephemeral world of the Internet, so it feels like we have been friends a long time. I'm eager to met her ITRW ("in the real world"), as the kids say these days.

The program will take place from 8 PM until midnight at the campus EIC. A map and directions are on this page.

The program is free, and children must be at least 12 years of age to attend. We ask that you please RSVP by dropping us a note; you can do so by filling out the contact form on the RRBO web site.

Friday, March 23, 2012

What does summer in winter mean for birds?

We are in the midst of an unprecedented March heat wave. Here in southeast Michigan, we have experienced a week of temperatures over 70F (and a few over 80F), but this warmth is not a local phenomena. Records are being shattered all over the eastern U.S. and Canada.

The growing season in Michigan is about five weeks ahead of schedule. Many insects are also making very early appearances. That, in a nutshell, is the problem with a stretch of warm weather that comes ahead of the arrival of many migratory birds.

In my previous post, I discussed the migration timing of Neotropical (long-distance) migrants -- those species that winter in the tropics.  As I mentioned there, the annual cycle of migratory birds has been choreographed by evolution to provide maximum resources at all the proper times of year. Birds wintering in the tropics take advantage of the resources available there, and fatten up towards the end of our winter. This enables them to make the journey north, back to their breeding areas in North America. As they move north, they take advantage of the insects that are emerging to feed on the new flush of leaves or opening blossoms on trees and other vegetation. A few short weeks later, they rely on soft-bodied insects such as caterpillars to feed their young. In autumn, the bounty of fruit, seeds, and nuts enables southbound migrants -- many species switch from a diet of insects to a diet dominated by fruit -- to gain and maintain the fat they need to make the long journey back to the tropics for the winter.

Favorable weather patterns can facilitate migratory flights, provided birds are on the move. Since the migratory movements of birds are primarily triggered by photo-period (day length), many long-distance migrants have not yet departed the tropics.

These birds are now already very out-of-sync with the insect resources that they need on their return trip to their nesting grounds. The longer it stays warm, the farther out of sync bugs and birds will be. This mismatch will extend into the nesting season, and could have significant impacts on successful reproduction.

However, it's nearly inevitable that we will see a return to cold weather. As reported by the National Weather Service, the average date of last freeze in southeast Michigan is not until late April.  And based on past years, most of southeast Michigan will have a hard freeze (28 degrees or lower) sometime during April.

Under this scenario, insects will become inactive, and many will simply die. They may perish before they have an opportunity to reproduce, or their eggs or early life stages will not be able to survive. If cold weather persists, it could also kill tender leaves, cause flowers to drop, or kill their pollinators. Migrants arriving during this period, or trying to reproduce afterwards, may experience a severe food shortage. Short-distance migrants such as robins, which have already started nest building, are likely to lose their first brood. These species typically have two or more broods in a season, and so may be able to raise some young later. But long-distance migrants are usually single-brooded, and have only one chance to nest successfully. If they are in poor condition they may not even attempt to nest.

A cold snap could also prevent plants from setting fruit (whether seeds, berries, or nuts). As noted above, these are essential crops for fall migrants, and a lack of resources on fall migration could cause outright mortality or late arrival on the wintering grounds, and consequently lower quality winter territories. In turn, reduced health in winter has carry-over effects that reach into subsequent seasons.

The birds most at risk are the long-distance migrants, particularly forest species. The Boreal Songbird Initiative has an excellent, referenced page dedicated to the effects of global warming on birds. For an example of research on how mismatches between food requirements and food availability impact long-distance migrants, see this paper: Avian population consequences of climate change are most severe for long-distance migrants in seasonal habitats. While this warm spell is a weather event, it is indicative of the problems associated with a changing climate.

Here in spring 2012, things are already seriously out of whack. At this point, the best we can hope for is a return to much cooler weather, but without hard freezes or measurable snowfall.

Update:  Only four days later, we have had a freeze in southeast Michigan. Meteorologist Jeff Masters notes that it probably caused tens of millions of dollars of damage to Michigan fruit crops. Fortunately, it was only a single night, but we have a couple of months yet to go. Masters also lists other significant freezes -- including the one in 2007 which occurred in April. This preceded one of our poorest fall banding seasons, and I also discussed it in my summary of the spring 2008 survey season.

Thursday, March 22, 2012

Early Neotropical migrants (?)

With the exceptionally warm weather this March, I have been seeing quite a few reports of early migrants. I'm not too surprised to see early reports of species that winter in the U.S. (short-distance migrants). This is probably due to both favorable weather and the fact many more people are outdoors this year looking for birds. But reports of Neotropical (long-distance migrants) deserve more scrutiny. What follows is a version of a message I sent to our local birding listserv.

What are we to make of reports of Neotropical migrants arriving many weeks ahead of schedule? Why would these birds, wintering in the tropics with no "knowledge" of an early spring here, be arriving so early? The migratory movements of these birds are typically triggered by photoperiod.

For a Wood Thrush, for example, to be present in Michigan right now means that it departed its Central American wintering grounds in mid-February. Recent studies have indicated Wood Thrushes take about a month get here. The average arrival date here in southeast Michigan (based on 16 years of data) is May 1, so the typical departure from Central America is early April. While favorable weather patterns can accelerate migratory flights, the birds have to be on the move to begin with.

There are many things we still don't know about the interactions of weather, climate, and birds. Yet it seems hard to conceive why so many individuals of various species (and for us to find even a handful having survived to arrive in Michigan, the starting number would have to be larger) would begin migrating so prematurely. The annual cycle of birds has been intricately choreographed through evolutionary time. Remember, these birds have to spend a period of time (also coincident with resources in the tropics) gaining weight in order to migrate north, just like they do to go south in fall.

While the data is not infallible, an excellent assessment of where migrants are currently being located can be found at eBird. Go to Explore Data, Range and Point Maps, choose a species, and specify March to March, current year (direct link here). There have been only five reports of Wood Thrushes in the U.S. so far this month. Most are still in Central America.

I suspect that some (most?) of the Neotropical migrants being reported at northern latitudes, if accurate, may actually be birds that did not migrate last fall and managed to survive the very mild winter. Black-throated Green Warbler and its close relatives, orioles, and tanagers, for instance, are occasionally reported in winter. I've also given some thought to the fact that every year there may be a few exceptionally early migrants which routinely do not survive jumping the gun that might be having more luck this year. Still, this is probably pretty rare and might be more applicable to short-distance migrants.

At any rate, just because it's warm outside doesn't mean we can expect birds too many weeks ahead of  schedule. When they do arrive, detection and viewing this year will be greatly diminished by leaves -- this is a good year to learn your bird songs!

Update: Marshall Iliff, one of the eBird coordinators at Cornell, has written a couple of long but excellent posts on the Massachusetts bird list regarding early arrivals, including hummingbirds. He's someone who has a vast experience in examining migration patterns through his work. I strongly encourage you to at least read through this one. An earlier post deals more with common early migrant ID problems.

Friday, February 24, 2012

Winter Bird Population Survey 2011-2012

The 20th year of RRBO's Winter Bird Population Survey has been completed. Over the 20 December to 20 February survey period, 39 species were tallied. The previous annual average number of species is 38. We added two species this year. The first was Gray Catbird. I had two on the first count day, 20 December 2011. I was standing and looking at one while I heard another calling. We have only one previous winter record of catbird in Dearborn, and none from campus, so this was quite notable. Single catbirds were reported by other observers several times over the winter. The final observation was by me on 27 January 2012 -- and the bird I saw that day was banded. The bird I was looking at on 20 December was not, and other observers didn't look for bands.

The other new species was a Pine Warbler was visiting the EIC suet feeders on 26 December. This was the second Dearborn and first campus winter record. This brings our cumulative total over the years to 72 species. It's amazing that after 20 years, new species can still be added to this count, but in fact we have added at least one new species every year except 2006-2007. Here is a quick-and-dirty graph of the accumulation of species.

 

I always check all the tangles along my route, and this year was rewarded twice with a Northern Saw-whet Owl. This may have been one or two birds, as the spots were different. I suspect it (they?) was just passing through, as I looked in the same spots every time, but it was only present in late January.


As for misses, Cedar Waxwing was not seen this year, only the fourth year it has been missed over 20 years. Although Pine Siskins and Common Redpolls were recorded several times over the period elsewhere in Dearborn, we did not have any sightings on campus.

American Crow in this immediate area continues to be nearly absent. You can look at last year's post for the story of the precipitous decline and lack of recovery since West Nile Virus (WNV) entered our region. This year I had a single crow fly over on three occasions, all in February when they begin to move around a bit. 

There have been 21 species that have been recorded all 20 years on the WBPS, listed below. Those in italics have also been recorded on over 95% of the 278 individual surveys completed over those years: 

Canada Goose, Mallard, Red-tailed Hawk, Mourning Dove, Red-bellied Woodpecker, Downy Woodpecker, Hairy Woodpecker, Northern Flicker, Blue Jay, American Crow, Black-capped Chickadee (missed on only a single survey in 20 years), White-breasted Nuthatch, Brown Creeper, American Robin, European Starling, American Tree Sparrow, Dark-eyed Junco, Northern Cardinal, House Finch, American Goldfinch, and House Sparrow.

Let's return to the American Crow again. Although Crows were recorded every year, prior to West Nile Virus, they were recorded on nearly every survey -- in the years 1993-2002, they were present on 97.4% of the surveys. In the years 2003-2012, they have been present on only 24.8% of the surveys. A couple of years, I only recorded them on one day.

This tidbit shows the value of this type of long-term data set for monitoring resident birds. It's critical to have programs like this in place, ready to provide "before" data when some unanticipated natural event occurs, including disease, or to see how bird populations respond to more gradual environmental changes.

So while the crow situation is very sad, it has provided me with motivation to get out there and count. One thing you need to know...I hate being out in cold weather. Of these 278 surveys, probably 270 were awfully routine. But the analyzed results will be worth even more than the sum of all the parts, and I'll be working on a complete summary of the Winter Bird Population Survey now that 20 years have been completed.

On the RRBO web site, you can find the full results of all 20 years of surveys, along with information on the protocol.

Tuesday, January 17, 2012

RRBO is 20 years old!

The Rouge River Bird Observatory banded its first bird -- a Black-capped Chickadee -- in 1992. Since then, we've banded over 33,000 more birds, conducted thousands of bird surveys, compiled hundreds of thousands of bird records, participated in numerous cooperative research projects, trained dozens of field volunteers...our list of accomplishments goes on.

For our 20th anniversary, we'll be starting an email newsletter to share a look back at some highlights of the past twenty years, and look forward to our future. If we don't have your email address, please sign up for our newsletter at this link. I'll be putting out our first issue later this month.



We thought it might be fun to spruce up the RRBO logo to reflect our anniversary. The original depiction of the bird with two leaves is from an architectural detail in Fair Lane, Henry Ford's estate; we chose it to reflect the historic nature of our study site. You may see this little bird carrying a banner acknowledging RRBO's 20 years of bird conservation. It will certainly be sitting on a branch that now has three leaves, representing our growth and the start of our third decade.

Given that RRBO is donor-supported, all our successes have been yours as well. We can all celebrate together!

Wednesday, January 4, 2012

Dearborn portion of the Detroit River CBC, 2012

The Detroit River Michigan-Ontario Christmas Bird Count was held, as it is each year, on January 1. This was the 35th year for the count, which is centered at I-94 and Warren Ave, and the 18th year that RRBO has coordinated the field work in the city of Dearborn.

The day began with mild temperatures which had been the hallmark of the autumn and winter season up to that point. All water was open, and there was (and had been for the most part) no snow cover. Waterfowl and seed-eating birds were dispersed far and wide. We'd seen an excellent fruit crop in late summer and fall, but most had been stripped by the time New Year's Day arrived.

We ended the day with 39 species, well below the average of 46 because the party covering the Ford Rouge Plant was denied access this year (not by Ford, but by the private security firm of another company). Thus, we missed a number of species of waterfowl and the two dozen or so Black-crowned Night-herons that typically roost in a small pond on the property.

Nonetheless, the day was not without highlights. Covering the UM-Dearborn campus, Greg Norwood found one of the Gray Catbirds first found on 20 December. This is a new species for the Dearborn portion of the count and brings the cumulative total to 87. A Sharp-shinned Hawk seen on 29 December couldn't be located, but is tallied as a "count week" species and is also new for the count. Greg also found the Yellow-bellied Sapsucker that has been hanging around for weeks. This is only the second time sapsucker has been found on the Dearborn portion of the count.

Darrin O'Brien and I covered the various plantings on Ford properties. Like last year, most of the seed-eating birds were found at the fields in front of Ford World Headquarters. Most numerous were House Finches (over 900) and House Sparrows (over 1800). The day's total of 1038 House Finches was a new high for the count. Many of the fields had a lot of standing water, making it harder for the little birds that like to forage on the ground. The total of 26 American Tree Sparrows was a new count low. Also present at Ford HQ was a Peregrine Falcon. It chased around a Red-tailed Hawk before landing on the Ford building.

Arrow points to grooming Peregrine.

Cathy Carroll turned up 18 Great Blue Herons along the concrete channel of the Rouge. Often this group of birds roosts along the river on campus, but forages all along the river. She also saw one of the seven American Kestrels in the city, which is a new high for the count.

Finally, only one American Crow was found all day. This is a new low, and represents a decade of counts with fewer than 20 crows (most years fewer than ten). The local population has simply not recovered from West Nile virus, and I am beginning to wonder if I will ever see new birds move in.

Wednesday, December 28, 2011

Keep those silver bracelets coming....

This Cooper's Hawk is just one of over 33,000 birds of 122 species banded by the Rouge River Bird Observatory on the campus of the University of Michigan-Dearborn since 1992. Our banding program is supported by donors like you. Help us continue this long-term conservation research project by making a contribution today. Donate online or see our website for a mail-in form.

Thank you from RRBO!

Monday, November 21, 2011

Former RRBO bander's research in NYT

Julie Jedlicka was an RRBO bander from 2000 to 2003, when she was a graduate student at the University of Michigan-Ann Arbor. She went on to receive her Ph.D at the University of California, Santa Cruz. She is now at the University of California, Berkeley on an NSF Postdoctoral Fellowship. Her research focuses on ecosystem services and avian conservation potential in northern California vineyards.

Julie and I have kept in touch throughout her academic career, and it has always been exciting to see her accomplishments accumulate. She has published a number of papers, and her most recent one -- Avian conservation practices strengthen ecosystem services in California vineyards -- was featured in the New York Times!

I like to think that RRBO had a small part in her success. But I know it is because Julie is a dedicated, creative scientist. Way to go, Julie!

Monday, November 14, 2011

Fall 2011 banding wrap-up

Our official fall banding season ended on 8 November. I had really hoped to squeeze in a few more days, but the wind or rain prevented me from doing so. I have posted a full summary with photos and stats on the RRBO web site.

Because we had a number of nets that were damaged by deer, instead of trashing them I moved them all into one area and decided to leave them up a little longer. As we have some warm days in November and December, I hope to catch a few more robins (and maybe even a wintering Hermit Thrush) to see what fruit they continue to eat as winter sets in.

As we identify and compile our seed samples from this fall and add them to our database, expect to see a blog post or two on what we have found our birds to be eating. Plus, a couple of exciting projects are being to come together, and of course our winter bird survey is also fast approaching. Stay tuned.

Tuesday, November 1, 2011

Myth-busting: Birds, buckthorn, and diarrhea

[This post is in response to local interest in the effects of buckthorn fruit on the birds that eat it.]

For the last 5 or 6 years, my research has focused on the use of fruit by birds in the fall, especially non-native fruit and migratory birds. One of the most abundant fruiting shrubs in my southeast Michigan study area is Common Buckthorn (Rhamnus cathartica), an invasive fruiting tree not native to North America.

Before I continue, let me issue this statement: I strongly believe in the use and preservation of native plants. I am not "pro-buckthorn." I believe it has many ecological liabilities. One prevailing notion is that buckthorn causes diarrhea in birds and is harmful to them. Based on a peer-reviewed literature search, I cannot find evidence that this is true.

Much of the background information here is from an excellent overview paper by Izhaki (2002). Other research is also cited.

Background: Chemical properties of buckthorns

Many plants have what are known as "secondary compounds," chemicals that play important roles in plant fitness and survival. These compounds or metabolites are generally believed to deter the consumption of unripe fruit, since the seeds in unripe fruit are not yet viable. See Cipollini and Levey (1997) for a discussion of other very interesting hypothetical functions of secondary compounds in ripe fruit.

The relevant secondary compound in buckthorns is emodin, a free-form (aglycone) anthraquinone found in 17 families, 28 genera, and 94 species of plants, including 23 species in the genus Rhamnus*. It can be found in many plant parts, including the leaves and fruit. Emodin has many properties. In regards to fruit, emodin can act as an antimicrobial, inhibiting fruit damage. Levels of emodin in fruit pulp typically decrease as the fruit ripens. As explained above, this may help to protect the seeds from being dispersed before they are mature, or eaten and destroyed by seed predators.

The biological activity of emodin (as well as many other compounds) is different in mammals than in birds. Emodin is well-known as a laxative in humans as well as other mammals. What about birds?

Buckthorn and birds

Wherever it occurs, buckthorn tends to be distributed by birds. There are two commonly held and frequently repeated notions about buckthorn fruit: that it causes diarrhea in birds, and that birds in North America don't "know" not to eat unripe fruit and can become very sick or even die from eating it. (Actually, there is a third notion, that buckthorn fruit is "junk food." That isn't entirely true either, but it a subject of a future post.)

The diarrhea myth, I think, starts with the fact that when people see birds eating fruit, they also see the birds poop a lot. This is, in fact, true of most birds and most types of fruit, especially wet, pulpy fruit and fruit with bulky seeds. Fruit passes quickly through bird guts -- many fruits are composed of mainly water and seeds, and nutrients (especially sugars) that are quickly assimilated. Birds only have so much room in the digestive system and it makes sense for them to process fruit as quickly as possible, including jettisoning the seeds. Birds are also able to consume more fruit if they choose species that have short retention times (Cipollini and Levey 1997). Hence, the appearance of diarrhea. I suppose if you define diarrhea as loose, wet, and frequent defecation, then many fruits give birds "diarrhea." But the implication in public discussions is that the frequent, conspicuous defectations of buckthorn pulp is abnormal or harmful. I've seen similar messes near large stands of Pokeweed (Phytolacca americana) and Red Mulberry (Morus rubra), both native plants, and do not hear similar concern for birds' health.

Studies of secondary compounds in fruits (e.g., Wahaj et al. 1998) have indicated that plants exert "control" over the gut retention time of their seeds in birds through these chemicals; this includes both speeding up and/or slowing down of the passage through the digestive system.  This is presumably to influence the number of seeds expelled per defecation, the dispersal distance, and/or reduce or enhance the effects of gut passage on the seed coat. This control is advantageous to the plant if it increases its reproductive success.

Regarding emodin, Tsahar et al. (2003), working with Yellow-vented [White-spectacled] Bulbuls (Pycnonotus xanthopygos), found that emodin increased digestive efficiency in birds, aiding in the processing of dry matter, nitrogen, and other nutrients. They determined that this effect was the result of emodin slowing transit time of food through the gut. This study, then, found that emodin has a costive (constipating) effect, not a laxative one, at least in bulbuls.

In their review, Levey et al. (2007) noted, 

Despite the widespread detrimental effect of emodin on fruit consumption by vertebrates, ripe fruits that contain emodin are frequently consumed by a wide variety of seed dispersers... suggesting that the net benefits of fruit consumption somehow outweigh the negative effects of emodin. In particular, the nutritional reward of carbohydrates, lipids, and proteins in fruit pulp can be viewed as more important to consumers than the presence of co-occurring secondary compounds.

Do North American birds unwittingly eat unripe non-native buckthorn fruit, which contain higher concentrations of emodin than ripe fruit? Could they consume enough to harm them?

There are at least 14 native species of Rhamnus and Frangula in North America. Several species are widespread, and have similar fruit characteristics (phenology, size, color) as the non-native species. Given the widespread occurrence of emodin in this family, presumably it also occurs in the fruit of the native species. This indicates that North American birds are not naïve to buckthorn or emodin.

Even if they had no experience with fruits containing emodin, studies have shown that many bird species are sensitive to it and adjust their consumption accordingly. Tsahar et al. (2002) found the highly frugivorous Yellow-vented Bulbul could distinguish among artificial diets containing a range of emodin concentrations similar to what is found in ripe fruits, while House Sparrows could only discern emodin amounts similar to what is found in ripe versus unripe fruits.

Both of those bird species are Old World in origin. One of the only studies to take a long look at R. cathartica and North American birds was a doctoral dissertation by James Sherburne (1972). He found American Robins avoided feeding on fruits of other plants coated with emodin, and that even if starved for 12 hours, would only voluntarily eat a few unripe R. cathartica fruits. The unripe fruit contained between 0.6 to 1 microgram of emodin.

Sherburne went on to force American Robins and Gray Catbirds eat unripe Rhamnus fruit or capsules containing emodin. The birds showed signs of diarrhea after consuming 50 micrograms to 5 mg of emodin. At the lowest concentration showing effect (50 micrograms) and the highest concentration given for the unripe fruit (1 microgram), it would require ingestion of at least 50 unripe fruits to cause diarrhea.

Schafer et al. (1983) tested the toxicity of a wide range of compounds on birds, including emodin. The dose of emodin needed to kill half (LD50) of Red-winged Blackbirds and European Starlings was greater than 100 mg per kg of body mass. Under this scenario, an average-sized 65-gram male blackbird would need to consume at least 6500 unripe fruits of R. cathartica (based on the high estimate of 1 microgram of emodin in an unripe fruit from Sherburne) to reach the "LD50" dose. Little wonder the authors calculated a "hazard index" indicating little or no potential for emodin to cause acute poisoning in these species.

Given the ability of birds to detect emodin, their reluctance to eat unripe fruit (three other studies cited in Izhaki [2002] noted that in North America, "most bird species do not consume the unripe fruits"), and the high levels needed to create a negative response, we can probably infer that wild birds do not consume large enough quantities of unripe fruit to cause diarrhea or serious toxicity.

As for ripe fruit, Sherburne found no emodin in ripe fruits of R. cathartica, although other studies have found it in the ripe fruit of other Rhamnus species not yet established in North America (Tsahar et al. 2002). As it is found in far smaller amounts in ripe fruit, the number of fruits that would need to be consumed to cause harm would be many times greater than the examples listed above. Sherburne reported on 11 species of birds that readily ate ripe R. cathartica fruit, but did not mention any negative effects (in Knight et al. 2007).

In the wild, birds tend to mix their diets, choosing fruits and other foods within short feeding bouts, and this may be an attempt to balance nutrient intake or to avoid ingesting too much of a particular secondary compound (Cipollini and Levey 1997) . Further, the varied dietary inputs may contain their own qualities that could mediate any adverse physiological effects of emodin.

There are many ecological crimes we can pin on buckthorn. It doesn't appear that causing harmful diarrhea is one of them. If anybody has seen any other studies or peer-reviewed publications that do show that eating buckthorn fruit is harmful to birds, please post them in the comments. I am fascinated by this topic and interested in learning of new research.

-----

*Glossy Buckthorn, Frangula alnus, has often been included in the genus Rhamnus as R. frangula. It also contains emodin. When I refer to "buckthorn" here, I am referring to both Common and Glossy Buckthorn in general, unless otherwise noted.

Cipollini, M. L., and D. J. Levey. 1997. Secondary metabolites of fleshy vertebrate-dispersed fruits: adaptive hypotheses and implications for seed dispersal. American Naturalist 150:346-372.

Knight, K. S., J. S. Kurylo, A. G. Endress, and J. R. Stewart. 2007. Ecology and ecosystem impacts of common buckthorn (Rhamnus cathartica): a review. Biol. Invasions 9: 925-937.

Izhaki, I. 2002. Emodin -- a secondary metabolite with multiple ecological functions in higher plants. New Phytologist 155:205-217.

Levey, D. J., J. J. Tewksbury, I. Izhaki, E. Tsahar, and D. C. Haak. 2007. Evolutionary ecology of secondary compounds in ripe fruit: case studies with capsaicin and emodin. Pages 37-58 in A. J. Dennis, E. W. Schupp, R. J. Green, and D. A. Westcott, eds. Seed Dispersal: Theory and its Application in a Changing World. CAB International, Cambridge, MA.

Schafer, E.W. Jr, Bowles, W.A. Jr, and J. Hurlbut. 1983. The acute oral toxicity, repellency, and hazard potential of 998 chemicals to one or more species of wild and domestic birds. Arch. Environ. Contam. Toxicol. 12:355-382.

Sherburne, J. A. 1972. Effects of seasonal changes in the abundance and chemistry of the fleshy fruits of northeastern woody shrubs on patterns of exploitation by frugivorous birds. Ph.D. dissertation, Cornell University, Ithaca, New York.

Tsahar, E., J. Friedman, and I. Izhaki. 2002. Impact of fruit removal and seed predation of a secondary metabolite, emodin, in Rhamnus alaternus fruit pulp. Oikos 99:290–299.

Tsahar, E. 2001. The impact of the secondary metabolite emodin in Rhamnus alaternus fruits on fruit removal and seed predation. M.S. thesis, Tel-Aviv University, Israel.

Tsahar, E., J. Friedman, and I. Izhaki. 2003. Secondary metabolite emodin increases food assimilation efficiency of Yellow-vented bulbuls (Pycnonotus xanthopygos). Auk 120: 411-417.

Wahaj, S. A., D. J. Levey, A. K. Sanders, and M. L. Cipollini. 1998. Control of gut retention time by secondary metabolites in ripe Solanum fruits. Ecology 79:2309-2319.

Monday, October 24, 2011

Fall banding: Weeks 8-10

Good riddance to a wet September. October has been occasionally wet or windy, but overall the weather has been much better. Unlike some Octobers, we have had only two mornings with frost, which can delay us from opening in the morning if the nets get stuck shut. On the downside, deer are mating and they've managed to get in the banding area regularly. One night a buck was presumably chasing a doe and they ran into the gate of the chain link fence so hard they bent open the latch! We are now operating with a reduced number of nets, and all but two of the ones remaining are damaged from their activities.

The number of birds we have banded so far in October represents over 40% of the total for the season. Most have come after mid-month, when American Robin numbers increased, and the first big push of Yellow-rumped Warblers, Hermit Thrushes, and sparrows began. It is heartening to see respectable Hermit Thrush numbers. The number of Swainson's Thrushes banded this fall was our second lowest. We have already hit our average for Hermit Thrushes, and are getting plenty of seed samples from them, which is excellent. We're still below average for White-throats, and they don't seem as numerous this year as usual. We have only banded four White-crowned Sparrows, which is ridiculously low. Our average is 22.

White-throated Sparrow.

Warblers continue to be banded. In addition to Yellow-rumps, late species such as Common Yellowthroat, Orange-crowned, and Palm still are around, as is Tennessee. Every day we still get a Nashville Warbler or two, and we are far over our fall high of 59 Nashvilles banded. Notable was a Blackpoll Warbler banded on 22 October that tied the late fall date for Dearborn -- but one seen the next day furnished the new late date. An American Redstart was also banded  on 22 October, and that was a new late date for that species.

Orange-crowned Warbler.

Two species were banded this month that we don't get too often: Eastern Towhee and Yellow-bellied Sapsucker.


Young male Eastern Towhee.

Young female Yellow-bellied Sapsucker.
We are now around 1000 new birds banded of 72 species, approaching average but with a capture rate (based on number of nets and hours opened) still well below average. Typically we band into the first week of November, but we may go longer than that this year if the weather holds. The next banding update will be a summary of the season.

Wednesday, October 19, 2011

Poison ivy: Breakfast of champions

Our study of the fruit composition of the diets of fall migratory birds focuses on Catharus thrushes and the super-abundant non-native fruits found in urban areas. However, we do look for seeds in the "samples" (droppings) provided by all the birds we band. This helps us examine which other bird species are eating fruit, what types of fruit they consume, and whether the diets of different bird species favor different fruit species.

One of the native fruiting plants that is common on our site is poison-ivy (Toxicodendron radicans). The flowers are rather insignificant and can be overlooked.

They do result in fruit, and large mature vines produce good crops of small, off-white drupes. This often occurs overhead, where the vine has climbed up a tree and gets good sun exposure.

This portion of poison-ivy is growing on a fence where it gets direct sun, and each fall it has a lot of fruit.

Poison-ivy fruits themselves are about half the size of a pea, quite dry, and papery. They contain very little pulp. Each fruit has one to three, odd-looking, globular seeds that are very distinctive.


We find the seeds in samples from only a few species of birds. Most often it's woodpeckers, and we've gotten poison-ivy seeds from Downy and Hairy Woodpeckers, and Yellow-shafted Flickers. The sample below is from one dropping from a flicker.

The three seeds in the upper right are from wild grapes (probably Vitis riparia). The other 13 are poison-ivy. Over the past several years, the only other bird species contributing poison-ivy seeds has been Yellow-rumped Warbler.

When we find seeds in a Yellow-rump sample, it's always poison-ivy. The other day I was holding a Yellow-rump while writing down some data. Suddenly, a single poison-ivy seed shot out of the warbler! Usually, we just collect the seeds that are deposited in the holding bags we use to transport the birds from the nets to the banding lab.

This week, we got two poison-ivy seeds from a Ruby-crowned Kinglet, the first seed samples of any kind we've had from a kinglet. This particular bird was first banded on 7 October, when it weighed 6.3 grams. We recaptured it several more times. On 12 October, it weighed 6.7 grams, on 16 October it was 7.2 grams, and on 18 October it was 7.4 grams. It doesn't sound like much, but that's a 17.5% increase in the bird's original weight.

Poison-ivy fruit are very high in fats (over 40%) and low in sugars. Not all birds are able to easily or efficiently digest and absorb fats. Differences in digestive physiology, as well as the varied nutritional needs among residents,  long-distance, and short-distance migrants has a great influence on fruit choice.

In the special case of poison-ivy, the fats in the fruits are also of a waxy (high melting point) nature, and only a few bird species are able to process plant waxes. The eastern form of Yellow-rumped Warbler, found here, is called "Myrtle Warbler" because of its ability to eat the fruit of wax myrtle (Myrica sp.). Poison-ivy fruits are very similar in composition to myrtle fruit.

You may wonder if the compounds (urushiol) in poison-ivy that cause a skin rash in most people are present in the fruit. I'm not entirely sure; some sources say yes, others indicate they are only present in the sap, and therefore only the stems and leaves. In other plants with urushiol, such as mangoes, the fruit does not contain the poison. I'm not very sensitive to poison-ivy, and I have not had a problem handling the seeds once pooped from a bird.

Update: My friend Steve Hamilton has taken some great photos of a Cedar Waxwing and a Yellow-rumped Warbler at poison-ivy, and a video of a Yellow-rumped Warbler eating poison-ivy in Ohio.

Tuesday, October 11, 2011

Barred Owl in Dearborn

[2017 update at bottom of post]

I get a fair number of calls to help rescue birds from various situations, often inside buildings. Usually they are very common species (European Starlings, in particular, seem to have a knack for falling down chimneys). Often there isn't much I can do but offer advice, which is often sufficient to solve the problem.

Late yesterday afternoon I got a message from Jim Barber at the First Presbyterian Church of Dearborn, directly across the Rouge River from campus. They had a large owl (he thought Great Horned) trapped in the basement boiler room of the church. He was at wits end -- the bird had been there for at least several days and nobody he called was taking any action. The notion of a Great Horned Owl getting down a ventilation shaft seemed pretty unlikely to me, and he told me the room was around 20 by 20 feet with high ceilings. This seemed like a difficult situation, but my curiosity, the plight of the bird, and Jim's frustration compelled me to immediately head up to the church and figure out how I could help.

Within 15 minutes I was looking in the boiler room. Not only was it big, it was cluttered with all sorts of equipment and supplies. This was the part of the room I saw when I walked in:

To the right was the large boiler, and the ceiling went up another 10 feet, criss-crossed with pipes and supports. A large owl did indeed take off from a ceiling beam and fly over to a pipe above the boiler. To my great astonishment it was not a Great Horned Owl (or a Cooper's Hawk, which I sort of expected), but a Barred Owl (Strix varia), a species with only a single record from Dearborn, in 1976 (see history, below).

I decided there were two possibilities for catching the owl. One, with a long-handled net, although with so many obstacles I thought this might result in a lot of chasing around, which would stress the bird. The other was to use a bal-chatri trap, a common way of catching raptors. Bal-chatris are wire traps topped with small nooses made of fishing line. A mouse is placed in the trap, and when the raptor pounces on the trap it gets its talons caught in the nooses. The mouse isn't harmed, and the bird can be quickly released from the nooses. I figured the owl would be very hungry after three days, and this should work pretty well.

After outlining my plan, I called my husband Darrin O'Brien to have him bring a bal-chatri from home as well as a net for back up. I also called my good friend Jim Fowler. Jim has a great deal of experience handling raptors, and also spent 30 years at Greenfield Village as the head of the grounds department, rescuing plenty of birds from buildings. He would bring a long-handled net and a second bal-chatri. I went up to the RRBO banding lab on campus to fetch my banding gear.

When we all reconvened at the church, a member of the Michigan Humane Society wildlife department had shown up. He and the church employees had ambushed the owl and had it wrapped in a shirt, saving us a great deal of trouble. We took the owl from him, and after one loud screech, it settled down and stared up at Jim, who held it while we checked the bird's condition and I measured the wing.


Considering its ordeal, the owl was in great shape. It had some fat, and had no injuries or even broken feathers. Jim Barber and his co-worker Jamie told us there were certainly mice in the boiler room (and they also put out water for the owl), so we can only assume it probably ate while holed up.

Darrin took the bird so we could band it.


I let Jim Fowler do the honors. While it looks like Jim's nose might be in danger here, it's really the talons you have to worry about. Sure enough, it did grab Jim's thumb at one point, drawing blood.



Outside the breeding season, Barred Owls cannot be sexed, so we don't know if the owl is a male or female. But looking at the color, shape, and wear of the wing and tail feathers can help determine age.

All the wing feathers and their coverts (the row of feathers covering the bases of wing feathers) are quite uniform in color and wear, which indicates that this is a hatching-year (HY) bird. The outer six wing feathers (primaries) are slightly more worn that the inner four, but that might be due to flying around a room full of close objects and brushing against them. Further, at no age would we really expect all the inner primaries to be replaced and the outer primaries retained. The shape of the primary coverts is rounded, with the pale areas more round than block-shaped, also an indication of HY.

In the photo above, we can count the number of pale bars on primary number 9, the second feather from the outside. Five bars are visible, not counting the pale tip. In the first set of wing feathers on a Barred Owl, p9 will have 4 to 5 bars; there will be only 3 to 4 bars on it after it is molted. This feather might be molted in the owl's second fall, or not until the third fall. This owl was not actively molting any wing or tail feathers. If it was older than HY, it should have been molting some feathers, or there should have been some new wing feathers that looked different -- less worn with narrower bars spaced further apart.

The photo above not only proves I was actually present at this event, but also shows the pointed, whitish tips of the tail feathers. These are the first tail feathers, which will probably not be replaced until the bird's third fall molt, after which they will have darker, blunter tips and narrower bars. All of this leads to my conclusion that this is an HY bird. By October 10, we would expect that any flight feather molt would be nearly or fully complete, so if it were an older bird, we would see the contrast in old and new feathers discussed above. It's always tricky determining the age of a bird with which you have no experience, so I'm happy to take any corroboration or contradiction in the comments!

We walked to the edge of the parking lot to release the owl. It took flight and landed in a tree, shook itself, gave us one last look, and took off toward the Rouge River and UM-Dearborn campus. 

Barred Owls in Wayne County

According to historical accounts, Barred Owls nested in Wayne County until about 1910, after which they were apparently extirpated, being hunted and pushed out by agricultural and urban development. The next record I found was a report from the UM-Dearborn campus on 12 May 1971. I was unable to confirm the veracity of this record, but it was by a reliable observer. The only reliable report I have had from Dearborn is a bird seen on 7 April 1976 by Gary Hutman on land that is now the TPC Golf Course. Over a decade passed before a report came from Grosse Ile on 27 December 1987. In 1994, one was seen at Lake Erie Metropark by my husband Darrin on 17 September.

In recent years, Wayne County reports have become more frequent. Daryl Asprey found one at Crosswinds Marsh (phase 1) on 6 December 2003. When RRBO was coordinating the breeding bird atlas work for the county, one or two were reported calling in a wooded area in Canton Township from 2004-2006; we were never able to confirm nesting. Several years ago, a pair took up residence at Oakwoods Metropark, first heard calling by Daryl Asprey on 23 February 2007. Feel free to add any further records in the comments.

Thanks to everybody who participated in this rescue. Good luck to the owl, and to the guys who I understand will be on the roof of the church today, closing off a certain ventilation shaft...

Update: I had a report of a Barred Owl being heard at the far north end of campus on 23 April 2017.   

Saturday, October 1, 2011

Fall banding 2011: Weeks 6 and 7

The month of September drew to a close on a windy, rainy note -- the 9th full day of banding missed this month due to weather. Notable mid-way through the season is the near total absence of sparrow migration, with only two White-throated Sparrows banded so far, and no noticeable movement of Swamp, Song, or Lincoln's Sparrows.

Thrush migration has also been dismal. Gray-cheeked Thrushes are never numerous, and Hermit Thrushes have yet to arrive, but Swainson's Thrushes (left) are one of our bread-and-butter birds. Our average for Swainson's Thrush is 70, and a number of years we have topped 150. Our lowest year we caught 24, and we are tied for that number right now. It sounds like other banding stations are also below average. South of us, Black Swamp Bird Observatory was at 131 Swainson's Thrushes as of mid-month, and their mean is 480. If you have any thoughts or observations on thrush migration in the eastern U.S., please feel free to leave a comment! Looks like we'll have to put in at least one more year to increase our sample sizes for our dietary study.

Speaking of which, many trees and shrubs are still laden with late-ripening fruit. I don't ever recall having any substantial crops of arrowood (Viburnum dentatum) or elderberry (Sambucus canadensis) into September, yet these trees have had fruit most of the month, some still coming ripe. The Amur honeysuckle (Lonicera maackii) crop, a non-native, is still only about half-ripe. On the final day of September, I found multiple plants of this species, as well as gray dogwood (Cornus racemosa), woodbine (Parthenocissus inserta), and Japanese honeysuckle (L. japonica) still blooming! This year we have large crops of wild grapes (Vitis spp.), poison ivy (Toxicodendron radicans), and non-native climbing nightshade (Solanum dulcamara). Does anybody else think fruit crops are a little tardy this year?


Good numbers of warblers, relatively speaking, are still moving through, although we have yet to see Yellow-rumped Warblers in any numbers. This past week we exceeded our high number of Nashville Warblers (above), with 60 banded so far (our fall mean is 28). Two more uncommon species were also banded this period.

 This Connecticut Warbler was banded on 27 September...


...and so was this female Blue-winged Warbler. The Blue-winged is actually much rarer here in fall than the Connecticut. This is only the fourth Blue-winged Warbler we've banded in fall, whereas we've banded over two dozen Connecticut Warblers.

A reader asked for an update on the condition of American Robins, since I mentioned in our week 1 summary that the young robins we were catching were quite emaciated. For the month of August, the average weight of young robins was a full 5 grams below the average for previous Augusts. For August and September combined, it was about 1 gram below average. However, our sample size for this fall is very low. The ratio of young robins to adults is very out of whack. Normally for August-September, 75% of the robins we band are young. This year, it's only 36%. This is really surprising, since productivity (as judged by the multitude of young robins we saw this summer) seemed very high. What happened to them? Was there high mortality among other underweight robins? Unfortunately, we will probably never know.

Let's hope October brings us better weather, and more robins, catbirds, and thrushes!

Thursday, September 22, 2011

Geolocators on catbirds

Geolocators are tiny devices that measure light levels for up to two years. This data can be used to calculate latitude and longitude when compared with sunrise and sunset times and light levels at noon in different geographic locations. They are accurate to about 200 km for latitude, with better resolution for longitude.

When mounted on a bird, a geolocator records light intensity data at intervals throughout each day. Retrieved later, the data can be downloaded and migration routes, pace, and destination can be determined. For species with broad breeding and wintering ranges, this can provide important information on exactly where particular breeding populations spend the winter. Given that we have long-term Breeding Bird Survey data indicating that populations of some species are declining in particular regions of North America, figuring out where these birds spend most of the year helps us identify what may be causing their declines, and helps us devise more effective conservation measures.

This fall, RRBO is placing geolocators on a sample of summer resident Gray Catbirds. This project is a joint effort between RRBO and Dr. Melissa Bowlin, who joined the UM-Dearborn faculty late last year and who is a research partner of the Environmental Interpretive Center. Dr. Bowlin's interest is in how physical traits of birds influence their migratory performance. In our catbird study, she will be looking at how the wing shape of individual birds impacts the pace of their migration. The geolocator data will allow us to determine the time it takes for each of the birds to reach their wintering destination, and hopefully where the birds stop each day, so we can calculate the rate of migration for each bird.

RRBO is interested in the approximate route followed by catbirds breeding in this area, as well as where they spend the winter. Previous data from other researchers have indicated that Midwestern catbirds winter in Central America, whereas catbirds Mid-Atlantic nesting catbirds winter in the southern U.S. and the West Indies. This information is based on small sample sizes: recoveries of 17 banded birds and 6 birds with geolocators. Our data will add to this knowledge. 

The geolocators are tiny, and are carefully fitted on the birds with a flexible harness that loops around the bird's legs. The total weight of the geolocator plus the harness is less than a gram, or about 2.5% of the weight of an average catbird. The recommendation for any kind of radio transmitter or attachment to a bird is 4% or less. The geolocator rests just above the bird's rump. Dr. Bowlin has done careful studies, published in the journal Methods in Ecology and Evolution, determining the effect of drag and weight of various types and configurations of geolocators, using preserved bird bodies in a wind tunnel. The set-up we are using is the best available configuration to minimize these effects.

A geolocator, attached with a leg harness, above the rump of a
catbird at RRBO. The little wand pointed toward the tail is
the part with the light sensor.

When the feathers are smoothed out, only the light wand
sticks out.
Catbirds were chosen for this pilot project because it is not only our most frequently banded long-distance migrant, but also because we recapture a lot of individuals in subsequent years. This is critical because in order to get the data, we have to recapture the bird next year, remove the geolocator, and download the information! Geolocators are typically put on nesting birds, because they have the highest probability of returning to the same site in subsequent years. RRBO banding data has indicated that both adult and young birds (hatching year) captured in early autumn, after hatching year birds have become independent, also have a high return rate. This study will also help us determine if deploying geolocators on hatching year or post-breeding birds is viable. If so, it could help expand the use of these devices by migration banding stations that do not operate during the breeding season. Since we are putting geolocators on both adult and young of the same species from the same population, we hope to also see if age is a factor in the choice of migration route or wintering site.
Because the geolocators are hard to see in the field (the arrow
is pointing to the wand on this one), catbirds are also getting
a single green color band to help us relocate them next year.
(The dark "mustache" on this bird is a juice stain from a meal
of berries!)

As you can see, the potential for these little devices to unravel basic life history mysteries is huge. The pioneering study with bird and geolocators was done by Dr. Bridget Stuchbury and published in the journal Science. The study looked at Wood Thrushes and Purple Martins, and is summarized here. Geolocators are being used to study Bicknell's Thrushes, Bobolinks, Red Knots, Ruddy Turnstones, and Golden-crowned Sparrows, among other species.  Much more information on this technology, as well as the importance of what we can discover is available at the web site of the Migratory Connectivity Project.

We plan to offer donors an opportunity to sponsor these catbirds. To be included in our fall campaign, add your name to the RRBO mailing list.

Friday, September 16, 2011

Fall banding 2011: week 5

Well, things can sure change in a hurry. After probably the dullest first month in 20 years of fall banding came two of the busiest days in RRBO's history. The same stalled low pressure system that was responsible for days of rain and/or wind eased up just enough on Friday, Sep 9 to let us open our nets. Birds that had been pushed west by the weather systems in the prior days were all over the place. We caught 127 birds on Friday morning, and nearly all of them were warblers. It was raining at sunrise on Saturday, but stopped for two hours which allowed us to open nets. It was clear things were still hopping. We closed when it rained, and re-opened again. Although we were not open as long as Friday, we caught 134 birds, again mostly warblers.

Twenty were RTHU, which we released unbanded. Subtracting those and recaptures, 216 were new birds. Thanks to Darrin O'Brien and Dana Wloch, two of my most experienced banders, we worked out a system where birds were fully processed -- measured, aged, sexed, and weighed -- in less than two minutes and we were never away from the nets for more than 40 minutes.

In the fall, Bay-breasted Warblers usually don't show
much bay color on the flanks. This one has a hint.
The big story for the week has been Bay-breasted Warblers. Our fall average is just two, and our previous fall season high number is five. We have already banded 26 and seen many others. Tennessee Warblers are more numerous west of here in fall, but we've exceeded our fall average of nine with 11 so so far. These two species (along with Cape May Warbler), are generally thought of as "spruce budworm" warblers, since their populations can be tied with outbreaks of this insect on their nesting grounds.

Black-throated Green Warbler

When there are large pushes of birds due to weather systems, it's hard to attribute inflated numbers to actual increases in populations, but a few other species have more numerous than usual this season overall (not just on the two big days). Blackpoll Warblers are much more common; our fall mean is 23, and we've banded 43 so far. Our current total of ten Black-throated Green Warblers is well above our fall mean of two and high of six. We've netted and released 52 Ruby-throated Hummingbirds. Since they are not marked some may be repeats, but it isn't too unusual to catch three to five in one net. However, the most we've netted in the past was 50, and we usually get them into October.

Things tapered off after those two big days and have more or less returned to normal. I hope to have a post up about one of our special projects within the next week or so.

Thursday, September 8, 2011

Fall 2011: Weeks 3 and 4

As you might imagine, banding has been largely at a standstill. Week 3 was very hot, limiting banding to only a couple of hours in the morning. Week 4 so far has been -- and looks to be -- completely rained out. A low pressure system (the remnants of tropical depression Lee) has been stalled just to our east, unable to move as Hurricane/Tropical Storm Katia moves up the Atlantic. Not much we can do but wait out the weather. Here are a few birds we banded when the conditions cooperated.

American Redstarts are quite numerous this fall. Most are young birds. Some young males and females can't be told apart. Male redstarts look a lot like females for an entire year. However, a few have more boldly colored orange patches on the sides, which you can just make out in this photo.

Wilson's Warblers are also common early migrants here. The young females show barely any trace of the dark black cap of males.

Yellow-bellied Flycatchers are a personal favorite of mine. It is really hard to capture their true lemony-olive color, but this photo comes close. Notice that their heads look too big for their bodies -- this can be a good field mark, especially when combined with the color.

I did take a look at the previous RRBO data and compared it to our August data to see if my hunch that birds seemed to have nested a little later, based on molt patterns, was correct. I mentioned this in my previous post. I examined all hatching-year birds banded in August 1992-2010. About 13% of those birds had not yet started their first post-juvenile molt. For August 2011, it was 26%. So it does seem that a lot of the juvenile birds we caught in August were a week or so younger than in previous years.

We hope to be able to resume banding over the weekend.